首页> 外文会议>Symposium C, Smart materials for smart devices and structures;Fall meeting of European Matericals Research Society; 20080915-19;20080915-19; Warsaw(PL);Warsaw(PL) >Electrically-Controlled Penicillin/Streptomycin Release from Nanostructured Polypyrrole Coated on Titanium for Orthopedic Implants
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Electrically-Controlled Penicillin/Streptomycin Release from Nanostructured Polypyrrole Coated on Titanium for Orthopedic Implants

机译:电控青霉素/链霉素从用于钛涂层的纳米结构聚吡咯用于骨科植入物的释放

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摘要

Implant infection leading to revision surgery can be avoided by incorporating controllable antibiotic release from titanium (Ti) implant surfaces. In this study, penicillin/streptomycin (P/S) and dexamethasone (Dex) were successfully immobilized via electropolymerization within polypyrrole membranes coated on the surface of Ti, which is widely used in orthopedic applications. In vitro results showed that greater numbers of osteoblasts adhered on these polymer-coated substrates than on currently-used unmodified Ti. X-ray photoelectron spectroscopy was used to monitor and compare the reaction effectiveness and the yield of electropolymerization. Polypyrrole membranes conjugated with P/S and Dex, and then coated with PLGA, all possessed nanometer scale roughness, as analyzed by atomic force microscopy. In summary, this study demonstrated that drugs incorporated within electroactive polypyrrole membranes, whose release was controlled by applying voltages, supported osteoblast adhesion and could potentially fight bacterial infection.
机译:通过合并钛(Ti)植入物表面可控的抗生素释放,可以避免导致翻修手术的植入物感染。在这项研究中,通过电聚合成功地将青霉素/链霉素(P / S)和地塞米松(Dex)固定在覆盖在Ti表面的聚吡咯膜中,该膜广泛用于整形外科领域。体外结果显示,与目前使用的未改性Ti相比,在这些聚合物涂层的基材上粘附的成骨细胞数量更多。 X射线光电子能谱法用于监测和比较反应效率和电聚合的产率。通过原子力显微镜分析,与P / S和Dex共轭然后涂覆PLGA的聚吡咯膜均具有纳米级粗糙度。总而言之,这项研究表明,结合在电活性聚吡咯膜中的药物通过释放电压来控制释放,支持成骨细胞粘附并可能对抗细菌感染。

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